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Assessing the toxicity and accumulation of bulk- and nano- CuO in Hordeum sativum L

机译:评估部落和纳米Cuo在HORDEUM STIVUM L的毒性和积累

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The effects of bulk- and nano-CuO were monitored on barley (Hordeum sativumL.) in hydroponic conditions. The anatomical and cyto-/morphometric parameters of plants, exposed to both types of CuO in different doses (300 and 2000 mg/L) were recorded. The germination rate, root and shoot lengths decreased in a dose-dependent manner. Exposure to nano-CuO significantly increased Cu content in theH. sativumroots; however, the translocation rates of dissolved Cu were low and showed less accumulation in above-ground tissues. The differences between nano- and bulk-CuO treated plants were sufficiently evident, but at lower concentrations, these differences were non-significant. The relative seed germination inhibition was noted up to 11% and 22% under the high dose of bulk- and nano-CuO, respectively; however, at low dose, it was non-significant. The relative root length was reduced 3.6 fold by bulk- and 1.5 fold by nano-CuO, and shoot lengths decreased 1.6 fold by bulk- and 1.4 fold by nano-CuO under the high dose after growth of 30 days. It indicated more morphological effects onH. sativumcaused by bulk- than the nano-CuO. The cytomorphometric analysis indicated the average cortex cell, total cortex, and total central cylinder areas of root cells and the average areas of chlorenchyma leaf cells were increased as compared to control in both bulk- and nano-CuO treated plants. It showed destructive effects of nano- and bulk-CuO on cellular organizations ofH. sativumanatomy.Thus, at the low dose, the minimal effects of nano-CuO were observed than the bulk. Therefore, the finding could be interest for the safe application of nano-CuO.
机译:在大麦(Hordeum Sativuml)上监测批量和纳米CuO的效果在水培条件下。记录植物的解剖学和细胞/形态学参数,暴露于两种类型的CuO在不同剂量(300和2000mg / L)中。萌发率,根和芽长以剂量依赖性方式降低。暴露于纳米CuO显着增加了Cu含量。 sativumroots;然而,溶解的Cu的易位速率低,并且在地上组织中显示较少积累。纳米和批量-Cuo处理植物之间的差异足够明显,但在较低浓度下,这些差异是非显着的。相对种子萌发抑制分别在大剂量和纳米CuO的高剂量下产生高达11%和22%;但是,在低剂量时,它是非显着的。通过纳米-CuO块和1.5倍减少3.6倍的相对根长度,并且在30天后,通过纳米-CuO在高剂量下通过纳米-Cuo折叠16倍,芽长度降低1.6倍。它表明了更多的形态学效应。通过散装 - 比纳米cuo散发出来。细胞谱分析表明了与群体和纳米CuO处理植物中的对照相比,平均皮质细胞,总皮层和根细胞的总中心圆柱面积和肺细胞的平均区域增加。它表现出纳米和批量-Cuo对细胞组织的破坏性影响。 Sativumanatomy.thus,低剂量,观察到纳米CuO的最小效果比散装。因此,该发现可能是纳米CuO安全应用的兴趣。

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